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Finite element analysis of eroding type surface thermocouple with application to engine heat flux measurement

机译:腐蚀型表面热电偶的有限元分析及其在发动机热通量测量中的应用

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摘要

A two-dimensional finite element model has been used to analyze the unsteady heat conduction behavior of an eroding type of surface thermocouple. The impulse response of the thermocouple was analyzed by using both a one-dimensional solution and a two-dimensional model. The experimental impulse response of the thermocouple was investigated by a laser impulse excitation experiment to validate the modelling results. The modelling results showed that there was a significant difference between the two-dimensional modelling and the one-dimensional analytical solution, especially before 1 ms. The two-dimensional modelling result is closer to the laser impulse experiment result, which implies the existence of a multi-dimensional effect on the transient heat conduction within the eroding thermocouple. Engine heat flux measurements were obtained using the impulse response analysis, and a comparison of the computed heat flux has been made using the experimental impulse response and the different models. The use of a laser impulse calibration is recommended. If a model is to be used then it should be a 2-D model, but if only a 1-D model is available, then the 1-D model should be based on the properties of the alumel.
机译:二维有限元模型已用于分析侵蚀型表面热电偶的非稳态热传导行为。通过使用一维解和二维模型来分析热电偶的脉冲响应。通过激光脉冲激发实验研究了热电偶的实验脉冲响应,以验证建模结果。建模结果表明,二维建模与一维解析解之间存在显着差异,尤其是在1 ms之前。二维建模结果更接近于激光脉冲实验结果,这表明对腐蚀热电偶内的瞬态热传导存在多维影响。使用脉冲响应分析获得了发动机热通量的测量值,并使用实验性脉冲响应和不同模型对计算出的热通量进行了比较。建议使用激光脉冲校准。如果要使用模型,则它应该是2-D模型,但是如果只有1-D模型可用,则1-D模型应基于氧化铝的属性。

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